Annular high temperature press device

CN224781413UActive Publication Date: 2026-09-22HUIZHOU DESAY BATTERY
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Patent Information

Application Number
CN202522356822.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-06
Publication Date
2026-09-22
Estimated Expiration
2035-11-06

AI Technical Summary

Technical Problem

在这个过程中,不仅需要消耗额外的时间来完成产品的定位、抓取、搬运和放置等操作,还可能因为搬运设备的调度问题、不同工序间的衔接不畅等因素,导致产品在搬运过程中出现等待时间过长的情况,从而延长了整体生产周期

Benefits of technology

本实用新型提供的一种环形高温压合设备,通过设置传输机构、上料机构、下料机构和多个热压机构,使得产品在传输机构作用下,将上料机构位置的产品传输至多个热压机构,而后又将热压完成的产品传输至下料机构位置进行下料,实现全自动化的自动上料、热压和下料作业,并且,在第二传输轨道上对应多个热压机构的位置布设热压平台,以满足热压机构在作业时的重载需求,相比传统热压作业中需要将产品搬运至特定热压平台进行热压的方式,本申请能够在传输机构上传输的同时满足多工位热压机构的热压作业,有效提高作业效率。

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Abstract

The utility model provides a kind of annular high-temperature compression equipment, including conveying mechanism, feeding mechanism, discharging mechanism and multiple hot-pressing mechanisms, multiple transmission carriers are arranged on the conveying mechanism;The conveying mechanism includes the first transmission track and the second transmission track being arranged in parallel and the first splicing module, the second splicing module being respectively arranged in the first transmission track and the second transmission track near two ends, the first splicing module and the second splicing module can be spliced in the first transmission track or the second transmission track;The discharging mechanism and the feeding mechanism are sequentially arranged along the transmission direction of the first transmission track, multiple hot-pressing mechanisms are sequentially arranged along the transmission direction of the second transmission track;Wherein, the position corresponding to multiple hot-pressing mechanisms on the second transmission track is provided with hot-pressing platform;The utility model is used for the automatic feeding, hot-pressing and discharging operation of multiple-station hot-pressing mechanism, and operation efficiency can be effectively improved.
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Description

Technical Field

[0001] This utility model belongs to the field of automated operation technology, specifically relating to a ring-shaped high-temperature pressing device. Background Technology

[0002] In the field of battery manufacturing, hot pressing technology is one of the key steps in ensuring battery performance and quality. Its main function is to optimize the structural compactness of internal battery components such as electrodes and separators through the synergistic effect of specific temperatures and pressures, thereby improving the battery's energy density, cycle life, and safety. Therefore, it is widely used in the production processes of various types of batteries, including lithium-ion and sodium-ion batteries. In this application of technology, the hot pressing platform, as the core carrier and operating device, directly determines the stability of the hot pressing process and the final product quality.

[0003] Considering the unique nature of battery hot pressing operations, to ensure uniform, stable, and sufficiently high pressure during the hot pressing process, while also withstanding the load of long-term operation in high-temperature environments, the hot pressing platform typically needs to meet stringent heavy-duty requirements. Therefore, in actual production operations, it is usually necessary to transport the battery products to be hot pressed to a specific hot pressing platform. This operational mode significantly restricts the improvement of work efficiency. Battery products undergo multiple processing steps on the production line. When they enter the hot pressing stage, they need to be transferred from the conveyor lines or storage areas of previous processes to the specific hot pressing platform using specialized handling equipment (such as robotic arms, gantry cranes, AGVs, etc.). This process not only consumes additional time for product positioning, gripping, handling, and placement, but also may result in excessively long waiting times during handling due to factors such as scheduling issues with the handling equipment and poor coordination between different processes, thus extending the overall production cycle. Summary of the Invention

[0004] To address the shortcomings of the existing technology, this utility model provides a ring-shaped high-temperature pressing device for automatic feeding, hot pressing, and unloading operations of a multi-station hot pressing mechanism, which can effectively improve work efficiency.

[0005] The technical effects to be achieved by this utility model are realized through the following technical aspects: This utility model provides a ring-shaped high-temperature pressing device, including a transmission mechanism, a feeding mechanism, a discharging mechanism, and multiple hot pressing mechanisms, wherein multiple transmission carriers are arranged on the transmission mechanism; The transmission mechanism includes a first transmission track and a second transmission track arranged in parallel, and a first splicing module and a second splicing module respectively disposed at near ends of the first transmission track and the second transmission track. Both the first splicing module and the second splicing module can be spliced ​​onto the first transmission track or the second transmission track. The feeding mechanism and the loading mechanism are arranged sequentially along the transmission direction of the first transmission track, and the plurality of hot pressing mechanisms are arranged sequentially along the transmission direction of the second transmission track. In this case, hot pressing platforms are arranged on the second transmission track at positions corresponding to the positions of the multiple hot pressing mechanisms.

[0006] In some implementations, the first splicing module includes a first transverse module and a first splicing transmission track; The first splicing transmission track is connected to the drive end of the first lateral movement module. The first lateral movement module drives the first splicing transmission track to splice onto the first transmission track or the second transmission track. The splicing requirements of the first splicing transmission track are met through the first lateral movement module to satisfy the transmission requirements of the product.

[0007] In some implementations, the second splicing module includes a second traverse module and a second splicing transmission track; The second splicing transmission track is connected to the drive end of the second lateral movement module. The second lateral movement module drives the second splicing transmission track to splice onto the first transmission track or the second transmission track. The splicing requirements of the second splicing transmission track are met through the second lateral movement module to satisfy the transmission requirements of the product.

[0008] In some implementations, the hot pressing mechanism includes a hot pressing module; The hot pressing module includes a pressing drive unit and a pressure plate connected to the drive end of the pressing drive unit. Under the driving action of the pressing drive unit, the pressure plate realizes the hot pressing operation on the product.

[0009] In some implementations, the hot pressing module further includes a balancing unit connected to the pressure plate. The balancing unit is used to balance the pressure plate. By setting the balancing unit, the pressure plate can be balanced, thereby improving the hot pressing quality.

[0010] In some implementations, the hot pressing module also includes a pressure display meter connected to the pressure plate to collect the pressure of the pressure plate, so that the operator can know the hot pressing pressure of the hot pressing module and determine whether there is a need for pressure adjustment.

[0011] In some implementations, the hot pressing mechanism further includes a first support; The number of hot-pressing modules is two, and the two hot-pressing modules are arranged adjacent to each other on the first support. The two hot-pressing modules are arranged at the same hot-pressing mechanism to improve the hot-pressing efficiency.

[0012] In some implementations, the transport vehicle includes a support trolley and a suction plate disposed on the support trolley; The supporting trolley is used to adapt to the transmission mechanism, and the suction plate is used to hold the product, so as to achieve stable transmission of the product.

[0013] In some implementations, the feeding mechanism includes a first robot and a material handling unit connected to the drive end of the first robot, thereby achieving automated feeding of products.

[0014] In some implementations, the material handling unit includes an adsorption component and an elastic buffer component; The adsorption component is connected to the elastic buffer component, which is connected to the drive end of the first robot, thereby preventing damage to the product by force during the product handling process.

[0015] In summary, this utility model has at least the following advantages: This utility model provides a ring-shaped high-temperature pressing device. By setting up a transmission mechanism, a feeding mechanism, a discharging mechanism, and multiple hot pressing mechanisms, the product is transported from the feeding mechanism to the multiple hot pressing mechanisms under the action of the transmission mechanism. Then, the hot-pressed product is transported to the discharging mechanism for unloading, realizing fully automated automatic feeding, hot pressing, and unloading operations. Furthermore, hot pressing platforms are arranged on the second transmission track corresponding to the positions of the multiple hot pressing mechanisms to meet the heavy load requirements of the hot pressing mechanisms during operation. Compared with the traditional hot pressing operation that requires the product to be transported to a specific hot pressing platform for hot pressing, this application can meet the hot pressing operation of multiple hot pressing mechanisms while being transported on the transmission mechanism, effectively improving the operation efficiency. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of a ring-shaped high-temperature pressing device provided in Embodiment 1 of this utility model; Figure 2 A schematic diagram of the first and second transverse movement modules provided in Embodiment 1 of this utility model; Figure 3 A schematic diagram of the hot pressing mechanism provided in Embodiment 2 of this utility model; Figure 4 A schematic diagram of the transmission carrier provided in Embodiment 3 of this utility model; Figure 5 A schematic diagram of the feeding mechanism provided in Embodiment 3 of this utility model; Marked in the image: 100. Transmission mechanism; 110. First transmission track; 120. Second transmission track; 130. First splicing module; 131. First lateral movement module; 132. First splicing transmission track; 140. Second splicing module; 141. Second lateral movement module; 142. Second splicing transmission track; 200. Feeding mechanism; 210. First robot; 220. Picking unit; 221. Adsorption assembly; 222. Elastic buffer assembly; 300. Feeding mechanism; 400. Hot pressing mechanism; 410. Hot pressing module; 411. Pressing drive unit; 412. Pressure plate; 413. Balancing unit; 414. Pressure display gauge; 420. First support; 500. Transmission vehicle; 510. Support trolley; 520. Suction plate. Detailed Implementation

[0017] To facilitate understanding of the present invention, a more comprehensive description will be given below in conjunction with the accompanying drawings and specific embodiments. The drawings illustrate preferred embodiments of the invention. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a thorough and complete understanding of the disclosure of the invention.

[0018] It should be noted that when a component is said to be "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component.

[0019] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of this invention is in use. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention. In addition, the terms "first," "second," "third," etc., are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0020] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.

[0021] Example 1: Please see Figure 1 and Figure 2 A ring-shaped high-temperature pressing device includes a transmission mechanism 100, a feeding mechanism 200, a discharging mechanism 300, and multiple hot pressing mechanisms 400. Multiple transmission carriers 500 are arranged on the transmission mechanism 100.

[0022] Multiple transport carriers 500 are used to carry products, and the products are transported on the transport mechanism 100 by means of the transport mechanism 100.

[0023] The loading mechanism 200 is used to connect with other equipment or workstations to load products to be hot-pressed onto the transfer carrier 500; the unloading mechanism 300 is used to unload products that have been hot-pressed on the transfer carrier 500 and connect with other equipment or workstations to realize the unloading and transfer of products; multiple hot-pressing mechanisms 400 are used to complete the hot-pressing operation on products on different transfer carriers 500 synchronously or asynchronously to improve the hot-pressing efficiency; the transfer mechanism 100 is used to transfer multiple transfer carriers 500 to the corresponding loading mechanism 200, unloading mechanism 300 and multiple hot-pressing mechanisms 400 positions.

[0024] The transmission mechanism 100 includes a first transmission track 110 and a second transmission track 120 arranged in parallel, and a first splicing module 130 and a second splicing module 140 respectively disposed at the near ends of the first transmission track 110 and the second transmission track 120. The first splicing module 130 and the second splicing module 140 can be spliced ​​onto the first transmission track 110 or the second transmission track 120.

[0025] Since both the first splicing module 130 and the second splicing module 140 can be spliced ​​onto either the first transmission track 110 or the second transmission track 120, under adaptive control, the first transmission track 110, the second transmission track 120, the first splicing module 130, and the second splicing module 140 together form a circular work line, enabling multiple transmission vehicles 500 to be cyclically transmitted on the transmission mechanism 100.

[0026] The unloading mechanism 300 and the loading mechanism 200 are arranged sequentially along the transmission direction of the first transmission track 110, and multiple hot pressing mechanisms 400 are arranged sequentially along the transmission direction of the second transmission track 120.

[0027] For example, in this annular high-temperature pressing equipment, the conveying operation is clockwise. During the specific operation, there is an empty conveying carrier 500 on the first conveying track 110 corresponding to the position of the feeding mechanism 200. After the feeding mechanism 200 feeds the products to be hot-pressed from other equipment or workstations onto the conveying carrier 500, the conveying carrier 500 conveys them on the first conveying track 110. At this time, the first splicing module 130 is spliced ​​onto the first conveying track 110. When the conveying carrier 500 conveys to the first splicing module 130, the first splicing module 130 switches to splicing with the second conveying track 120. Therefore, the conveying carrier 500 can pass through the first splicing module 120. 30 enables the switching of transmission on the first transmission track 110 and the second transmission track 120. After the transmission carrier 500 is transmitted on the second transmission track 120, it is transmitted to the hot pressing mechanism 400 under the action of the background controller to complete the hot pressing operation on the product. When the transmission carrier 500 is unloading, it is first spliced ​​to the second transmission track 120 by the second splicing module 140. After the transmission carrier 500 is transmitted to the second splicing module 140, it is then switched to splice with the first transmission track 110. After that, the transmission carrier 500 is transmitted to the unloading mechanism 300 through the action of the first transmission track 110 to perform the unloading operation.

[0028] It should be noted that this embodiment includes multiple hot pressing mechanisms 400. These mechanisms can perform simultaneous hot pressing operations or not. For example, in one mode, when there are transport carriers 500 awaiting hot pressing at each of the multiple hot pressing mechanisms 400 positions on the second transport track 120, the back-end controller drives the multiple hot pressing mechanisms 400 to perform simultaneous hot pressing operations. After hot pressing is completed, the unloading operation is performed sequentially. Alternatively, in another mode, when there are transport carriers 500 awaiting hot pressing at the hot pressing mechanism 400 at the end of the transport track 120, the hot pressing mechanism 400 can perform hot pressing operations. During the operation of the hot pressing mechanism 400, the transport carriers 500 awaiting operation are successively transported on the second transport track 120. For ease of understanding, the number of hot pressing mechanisms 400 is set to four, along the transport direction of the second transport track 120. A first hot pressing mechanism 400, a second hot pressing mechanism 400, a third hot pressing mechanism 400, and a fourth hot pressing mechanism 400 are arranged sequentially. That is, the fourth hot pressing mechanism 400 corresponds to the end of the second transfer track 120. When the transfer carrier 500 to be hot pressed is transferred to the position of the fourth hot pressing mechanism 400, the fourth hot pressing mechanism 400 performs hot pressing on the product on the transfer carrier 500. At the same time, the transfer carrier 500 is transferred from the second transfer track 120 to the third hot pressing mechanism 400, and the third hot pressing mechanism 400 performs hot pressing; the transfer carrier 500 is transferred to the second hot pressing mechanism 400, and the second hot pressing mechanism 400 performs hot pressing; the transfer carrier 500 is transferred to the first hot pressing mechanism 400, and the first hot pressing mechanism 400 performs hot pressing; after all the transfer carriers 500 operated by all the hot pressing mechanisms 400 have passed through the fourth hot pressing mechanism 400, all the hot pressing mechanisms 400 start a new hot pressing operation.

[0029] Among them, hot pressing platforms are arranged on the second transmission track 120 at the positions corresponding to multiple hot pressing mechanisms 400.

[0030] It is known that hot pressing operations require the hot pressing platform to meet strict heavy-duty requirements, such as being able to carry 200 kg. In traditional hot pressing operations, products need to be transported to a specific hot pressing platform for hot pressing. This method requires additional time to complete operations such as product positioning, gripping, transporting, and placement. Furthermore, due to factors such as scheduling issues of transport equipment and poor coordination between different processes, the waiting time during product transport may be too long, thereby extending the overall production cycle. In this embodiment, the hot pressing platform is directly integrated into the second transmission track 120, which can meet the hot pressing operations of the multi-station hot pressing mechanism 400 while being transported on the transmission mechanism 100, effectively improving work efficiency.

[0031] In particular, in this embodiment, the first transmission track 110 and the second transmission track 120 adopt magnetic levitation transmission technology. Both the first transmission track 110 and the second transmission track 120 can be spliced ​​together from multiple transmission modules. The number of transmission modules can be increased or decreased adaptively to increase the number of hot pressing mechanisms 400 or to meet the transmission distance requirements of the production line.

[0032] In some embodiments, the first splicing module 130 includes a first transverse module 131 and a first splicing transmission track 132; the first splicing transmission track 132 is connected to the drive end of the first transverse module 131, and the first transverse module 131 drives the first splicing transmission track 132 to splice onto the first transmission track 110 or the second transmission track 120, so as to meet the splicing requirements of the first splicing transmission track 132 through the first transverse module 131, thereby meeting the transmission requirements of the product.

[0033] Specifically, when it is necessary to transfer the transport vehicle 500 on the first transport track 110 to the second transport track 120, the first transverse module 131 can be used to drive the first splicing transport track 132 to be spliced ​​onto the first transport track 110. After the transport vehicle 500 is transferred to the first splicing transport track 132, the first transverse module 131 can be used to drive the first splicing transport track 132 to be spliced ​​onto the second transport track 120, so that the transport vehicle 500 is transferred to the second transport track 120 to meet the transport requirements of the product.

[0034] Similarly, the second splicing module 140 includes a second transverse module 141 and a second splicing transmission track 142; the second splicing transmission track 142 is connected to the drive end of the second transverse module 141, and the second transverse module 141 drives the second splicing transmission track 142 to splice onto the first transmission track 110 or the second transmission track 120. The splicing requirements of the second splicing transmission track 142 are met by the second transverse module 141 to satisfy the transmission requirements of the product.

[0035] When it is necessary to transfer the transport vehicle 500 on the second transport track 120 to the first transport track 110, the second lateral movement module 141 can be used to drive the second splicing transport track 142 to be spliced ​​onto the second transport track 120. After the transport vehicle 500 is transferred to the second splicing transport track 142, the second lateral movement module 141 can be used to drive the second splicing transport track 142 to be spliced ​​onto the first transport track 110, so that the transport vehicle 500 is transferred to the first transport track 110 to meet the transport requirements of the product.

[0036] Example 2: This embodiment makes further structural optimizations based on Embodiment 1. Please refer to... Figure 1 and Figure 2 Based on the above, refer to Figure 3 .

[0037] In this embodiment, the hot pressing mechanism 400 includes a hot pressing module 410; the hot pressing module 410 includes a pressing drive unit 411 and a pressure plate 412 connected to the drive end of the pressing drive unit 411. Under the driving action of the pressing drive unit 411, the pressure plate 412 realizes the hot pressing operation on the product.

[0038] The pressing drive unit 411 serves as the power output source for the hot pressing module 410, providing a stable and controllable driving force to the pressing plate 412. This ensures that the pressing plate 412 can apply pressure to the product according to preset pressure parameters, thereby achieving a precise pressing effect. The pressing drive unit 411 can be hydraulically driven, servo motor driven, or pneumatically driven, etc., and this embodiment does not impose specific limitations on it.

[0039] During the specific operation, the pressing drive unit 411 drives the pressure plate 412 to move downward according to the preset pressure parameters, gradually approaching the product and applying pressure. When the pressure reaches the target value, it enters the pressure holding stage, keeping the pressure stable. At the same time, the pressure plate 412 continuously transfers heat to the product, causing the material inside the product to solidify, shape or bond, forming the required structural shape.

[0040] Furthermore, the hot pressing module 410 also includes a balancing unit 413 connected to the pressure plate 412. The balancing unit 413 is used to balance the pressure plate 412. By setting the balancing unit 413, the pressure plate 412 can be balanced, thereby improving the hot pressing quality.

[0041] The balancing unit 413 optimizes the hot pressing process by adjusting the posture and balancing the force on the pressure plate 412. Typically, the balancing unit 413 can be a mechanical linkage balancing unit, a hydraulic synchronous balancing unit, or an elastic compensation balancing unit, etc., to ensure that the pressure plate 412 remains horizontal during the hot pressing operation, and to avoid affecting the hot pressing effect due to tilting or excessive local force.

[0042] The hot pressing module 410 also includes a pressure display 414, which is connected to the pressure plate 412, so that the staff can know the hot pressing pressure of the hot pressing module 410 and determine whether there is a need for pressure adjustment.

[0043] During the pressurization process of the pressure drive unit, the pressure sensor collects the pressure value of the pressure plate 412 in real time and feeds the data back to the controller. The controller adjusts the output of the drive unit according to the feedback data, so that the pressure gradually increases to the target pressure according to the preset pressure curve.

[0044] In some embodiments, the hot pressing mechanism 400 further includes a first support 420; the number of hot pressing modules 410 is two, and the two hot pressing modules 410 are arranged adjacently on the first support 420. The arrangement of two hot pressing modules 410 at the same hot pressing mechanism 400 improves the hot pressing efficiency.

[0045] Example 3: This embodiment makes further structural optimizations based on Embodiment 1. Please refer to... Figure 1 and Figure 2 Based on the above, refer to Figure 5 .

[0046] In this embodiment, the transmission carrier 500 includes a support trolley 510 and a suction plate 520 disposed on the support trolley 510; the support trolley 510 is used to adapt to the transmission of the transmission mechanism 100, and the suction plate 520 is used to hold the product to achieve stable transmission of the product.

[0047] For example, a groove is formed at the lower edge of the transport carrier 500, and a corresponding rail is formed on the transport mechanism 100. The cooperation between the groove and the rail achieves the effect of stable transport of the trolley 510 on the transport mechanism 100. The suction plate 520 is provided with multiple suction holes, which can adapt to the adsorption and positioning requirements of products of different sizes and improve versatility.

[0048] In some embodiments, the feeding mechanism 200 includes a first robot 210 and a picking unit 220 connected to the drive end of the first robot 210. The first robot 210 drives the picking unit 220 to move to other equipment or workstations to pick up products. Then, the first robot 210 drives the picking unit 220 to move above the conveyor 500 to load the products onto the conveyor 500, thereby realizing automated product feeding.

[0049] Similarly, the structure and operation of the unloading mechanism 300 can be understood by referring to the loading mechanism 200.

[0050] In some embodiments, the material handling unit 220 includes an adsorption component 221 and an elastic buffer component 222; the adsorption component 221 is connected to the elastic buffer component 222, and the elastic buffer component 222 is connected to the drive end of the first robot 210, so as to avoid damage to the product by hard force during the material handling process.

[0051] For example, under the driving action of the first robot 210, the elastic buffer component 222 is linked with the adsorption component 221 to adsorb the product downward. Under the continuous driving action of the first robot 210, when the adsorption component 221 has come into contact with the surface of the product, the spring buffer component can play a buffering role by squeezing, so as to avoid damaging the product by hard force.

[0052] The above description is merely an example and illustration of the structure of this invention, and while the description is specific and detailed, it should not be construed as limiting the scope of this invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this invention, and these obvious substitutions all fall within the protection scope of this invention.

Claims

1. A ring-shaped high-temperature pressing device, characterized in that, It includes a transmission mechanism (100), a feeding mechanism (200), a discharging mechanism (300), and multiple hot pressing mechanisms (400), wherein multiple transmission carriers (500) are arranged on the transmission mechanism (100); The transmission mechanism (100) includes a first transmission track (110) and a second transmission track (120) arranged in parallel, and a first splicing module (130) and a second splicing module (140) respectively disposed at the near ends of the first transmission track (110) and the second transmission track (120). The first splicing module (130) and the second splicing module (140) can be spliced ​​onto the first transmission track (110) or the second transmission track (120). The unloading mechanism (300) and the loading mechanism (200) are arranged sequentially along the transmission direction of the first transmission track (110), and the plurality of hot pressing mechanisms (400) are arranged sequentially along the transmission direction of the second transmission track (120). The second transmission track (120) is provided with hot pressing platforms at positions corresponding to the positions of the multiple hot pressing mechanisms (400).

2. The annular high-temperature pressing equipment according to claim 1, characterized in that, The first splicing module (130) includes a first transverse module (131) and a first splicing transmission track (132); The first splicing transmission track (132) is connected to the drive end of the first transverse module (131), and the first transverse module (131) drives the first splicing transmission track (132) to splice onto the first transmission track (110) or the second transmission track (120).

3. The annular high-temperature pressing equipment according to claim 1, characterized in that, The second splicing module (140) includes a second transverse module (141) and a second splicing transmission track (142). The second splicing transmission track (142) is connected to the drive end of the second transverse module (141), and the second transverse module (141) drives the second splicing transmission track (142) to splice onto the first transmission track (110) or the second transmission track (120).

4. The annular high-temperature pressing equipment according to claim 1, characterized in that, The hot pressing mechanism (400) includes a hot pressing module (410); The hot press module (410) includes a pressing drive unit (411) and a pressure plate (412) connected to the drive end of the pressing drive unit (411).

5. The annular high-temperature pressing equipment according to claim 4, characterized in that, The hot pressing module (410) also includes a balancing unit (413) connected to the pressure plate (412), the balancing unit (413) being used to balance the pressure plate (412).

6. The annular high-temperature pressing equipment according to claim 5, characterized in that, The hot press module (410) also includes a pressure display meter (414), which is connected to the pressure plate (412) and is used to collect the pressure of the pressure plate (412).

7. The annular high-temperature pressing equipment according to claim 4, characterized in that, The hot pressing mechanism (400) also includes a first support (420); The number of hot-pressing modules (410) is two, and the two hot-pressing modules (410) are arranged adjacent to each other on the first bracket (420).

8. The annular high-temperature pressing equipment according to claim 1, characterized in that, The transmission carrier (500) includes a support trolley (510) and a suction plate (520) disposed on the support trolley (510). The support trolley (510) is used to adapt to the transmission mechanism (100) for transmission, and the suction plate (520) is used to hold the product.

9. The annular high-temperature pressing equipment according to claim 1, characterized in that, The feeding mechanism (200) includes a first robot (210) and a material handling unit (220) connected to the drive end of the first robot (210).

10. The annular high-temperature pressing equipment according to claim 9, characterized in that, The material handling unit (220) includes an adsorption component (221) and an elastic buffer component (222). The adsorption component (221) is connected to the elastic buffer component (222), and the elastic buffer component (222) is connected to the drive end of the first robot (210).